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Numerical simulation of turbulent natural convection in a vertical channel asymmetrically heated with constant heat flux

机译:恒定热流不对称加热的垂直通道内湍流自然对流的数值模拟

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The natural convection flow in an asymmetrically heated vertical channel of finite length was simulated using Low Reynolds number k-#epsilon# model. The problem has many applications in industry and in civil engineering colling systems. Two-dimensional averaged momentum and energy equations are solved numerically. The effect of radiation on the rate of heat transfer is neglected. The problem is challenging, where inlet and outlet condition is not known prior to solution. In order to trigger transition, turbulence is introduced at the entrance to the channel, and its influence on the flow and on the transition to turbulent flow is addressed. Also, the rate of heat transfer from the heated wall is analyzed. The results were compared with experimental data and overall agreement was good.
机译:使用Low Reynolds数k-#epsilon#模型模拟了有限长度的非对称加热垂直通道中的自然对流。该问题在工业和土木工程系统中有许多应用。二维平均动量和能量方程数值求解。忽略了辐射对热传递速率的影响。在解决之前未知入口和出口条件的情况下,这个问题具有挑战性。为了触发过渡,在通道的入口处引入了湍流,并解决了其对流动的影响以及对湍流过渡的影响。同样,分析了从加热壁传热的速率。将结果与实验数据进行比较,总体一致性良好。

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